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Ab initio multiple spawning photochemical dynamics of DMABN using GPUs.

机译:从头开始使用GPU进行DMABN的多重产生光化学动力学。

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摘要

The ultrafast decay dynamics of 4-(N,N-dimethylamino)benzonitrile (DMABN) following photoexcitation was studied with the ab initio multiple spawning (AIMS) method, combined with GPU-accelerated linear-response time-dependent density functional theory (LR-TDDFT). We validate the LR-TDDFT method for this case and then present a detailed analysis of the first ≈200 fs of DMABN excited-state dynamics. Almost complete nonadiabatic population transfer from S2 (the initially populated bright state) to S1 takes place in less than 50 fs, without significant torsion of the dimethylamino (DMA) group. Significant torsion of the DMA group is only observed after the nuclear wavepacket reaches S1 and acquires locally excited electronic character. Our results show that torsion of the DMA group is not prerequisite for nonadiabatic transitions in DMABN, although such motion is indeed relevant on the lowest excited state (S1).
机译:通过从头算多产卵(AIMS)方法结合GPU加速的线性响应时变密度泛函理论(LR-),研究了光激发后4-(N,N-二甲基氨基)苄腈(DMABN)的超快衰减动力学。 TDDFT)。我们针对这种情况验证了LR-TDDFT方法,然后对DMABN激发态动力学的第一个≈200fs进行了详细分析。从S2(最初填充的明亮状态)到S1的几乎完全非绝热种群转移发生在不到50 fs的时间内,而二甲基氨基(DMA)基团没有明显的扭曲。仅在核波包到达S1并获得局部激发的电子特征后,才能观察到DMA基团的明显扭转。我们的结果表明,虽然DMABN的非绝热跃迁确实与最低激发态(S1)有关,但DMA组的扭转并不是先决条件。

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